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Synthesis of monolithic alumina-silica hollow microspheres and their heat-shielding performance for adiabatic materials

机译:单片氧化铝 - 二氧化硅中空微球的合成及其对绝热材料的热屏蔽性能

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Al2O3 ceramic foams-based composites were firstly synthesized to be used as the thermal insulation material which has excellent mechanical properties of the substrate material and better thermal properties of hollow microspheres. In this research, by doping TEOS, the monolithic hollow microspheres were prepared via a novel and effective synthesis route using propylene oxide as the gelation initiator to induce the gelation of aluminum chloride hexahydrate solution. The influence of TEOS on the morphology and high-temperature stability of the monolithic hollow microspheres was clarified in detail. Based on the optimized additive amount of TEOS, Al2O3 ceramic foams were introduced as the substrate material of alumina-silica hollow microspheres to fabricate the final Al2O3 ceramic foams-based composites. Benefited from this special structure, the Al2O3 ceramic foams based composites displayed excellent mechanical properties and thermal properties. The samples changed less in appearance and did not show significant shrinkage after heat-treatment at 1200 degrees C. The density, bending strength and thermal conductivity of the Al2O3 ceramic foams-based composite were 0.32 g/cm(3), 1.8 MPa and 0.12 W/m K, respectively.
机译:首先合成Al2O3陶瓷泡沫基复合材料以用作保温材料,其具有优异的基材材料的机械性能和更好的中空微球的热性质。在该研究中,通过掺杂Teos,通过使用环氧丙烷作为凝胶化引发剂的新颖和有效的合成途径制备整体式中空微球,以诱导氯化铝六水合物溶液的凝胶化。详细阐明了TEOS对整体空心微球的形态学和高温稳定性的影响。基于TEOS的优化添加量,将Al 2 O 3陶瓷泡沫作为氧化铝 - 二氧化硅中空微球的基材材料,以制造最终的Al2O3陶瓷泡沫基复合材料。受益于这种特殊结构,Al2O3陶瓷泡沫基复合材料显示出优异的机械性能和热性能。样品的外观变得更少,并且在1200摄氏度下热处理后没有显示出显着的收缩。基于Al2O3陶瓷泡沫的复合材料的密度,弯曲强度和导热率为0.32g / cm(3),1.8MPa和0.12分别为w / m k。

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